DOI: 10.46989/001c.169446 ISSN: 3067-0152

Amaranth ( Amaranthus hypochondriacus ) seed protein hydrolysate with optimized hydrolysis degree in Nile tilapia ( Oreochromis niloticus ) diets: effects o

Dayse G. Silva Mendes, Edith O. Cuevas Rodríguez, Oscar I. Zavala Leal, Breidy L. Cuevas Rodríguez, Luís M. Sánchez Magaña, Juan C. Bautista Covarrubias, Mario A. Gómez Favela, Francisco J. Valdez González

This study evaluated the effect of optimized protein hydrolysate from amaranth ( A. hypochondriacus ) seeds on antinutritional factors and apparent digestibility in Nile tilapia diets. The hydrolysate was produced using Alcalase® 2.4 L (pH 8, 55 °C, 1:10 w/v), achieving an optimal degree of hydrolysis of 79.79% at 150 min (defined as the shortest time to reach the hydrolysis plateau). Three isonitrogenous diets were formulated: a reference diet (RD) and two experimental diets replacing 30% of fishmeal with raw amaranth meal (RAM) and hydrolyzed amaranth meal (HAM). Trials were conducted in triplicate (20±3 g) for 45 days. SDS-PAGE confirmed that HAM exhibited lower-molecular-weight bands (≤10 kDa) than RAM. Hydrolysis significantly reduced ( P < 0.05) saponin content by 36% (2304.25 to 1476.00 mg DE/g) and phytic acid content by 16.8% (37.47 to 31.18 mg/g). Although trypsin inhibitor activity was detected in HAM (1.67 TIU/g), attributable to greater bioaccessibility after hydrolysis, it did not impair apparent digestibility. The apparent protein digestibility of HAM ingredient (92.85%) was significantly higher ( P < 0.05) than that of RAM (78.13%). The results demonstrate that replacing 30% of fishmeal with HAM in O. niloticus diets is an alternative that effectively reduces antinutritional factors and enhances protein digestibility.